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Differential gene expression in gall midge susceptible rice genotypes revealed by suppressive subtraction hybridization (SSH) cDNA libraries and microarray analysis

机译:抑制减数杂交(SSH)cDNA文库和微阵列分析揭示了gall蚊易感基因型中的差异基因表达

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Background A major pest of rice, the Asian rice gall midge (Orseolia oryzae Wood-Mason), causes significant yield losses in the rice growing regions throughout Asia. Feeding by the larvae induces susceptible plants to produce nutritive tissue to support growth and development. In order to identify molecular signatures during compatible interactions, genome wide transcriptional profiling was performed using SSH library and microarray technology. Results Results revealed up-regulation of genes relatedto primary metabolism, nutrient relocation, cell organization and DNA synthesis. Concomitantly, defense, secondary metabolism and signaling genes were suppressed. Further, real-time PCR validation of a selected set of 20 genes, in three susceptible ricevarieties (TN1, Kavya and Suraksha) during the interaction with the respective virulent gall midge biotypes, also revealed variation in gene expression in Kavya as compared to TN1 and Suraksha. Conclusions These studies showed that virulent insects induced the plants to step up metabolism and transport nutrients to their feeding site and suppressed defense responses. But Kavya rice mounted an elevated defense response during early hours of virulent gall midge infestation, which was over-powered later, resulting in host plant susceptibility.
机译:背景技术水稻的主要害虫是亚洲稻gall(Orseolia oryzae Wood-Mason),在整个亚洲的稻米种植地区造成了严重的产量损失。幼虫的摄食诱导易感植物产生营养组织以支持生长和发育。为了在兼容的相互作用中鉴定分子标记,使用SSH库和微阵列技术进行了全基因组转录谱分析。结果结果显示与初级代谢,营养物重新定位,细胞组织和DNA合成有关的基因上调。伴随地,防御,次级代谢和信号转导基因被抑制。此外,实时PCR验证了三个易感水稻品种(TN1,Kavya和Suraksha)中与各自有毒的胆mid生物型相互作用期间选定的20个基因的集合,也揭示了与TN1和TN1相比,Kavya中基因表达的变化。 Suraksha。结论这些研究表明,强力昆虫诱使植物加速新陈代谢并将营养物质输送到它们的摄食部位,并抑制防御反应。但是,卡夫亚水稻在剧烈的胆mid虫侵扰的早期就增强了防御反应,后来又被过度使用,导致寄主植物易感。

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